论文标题
上皮是多尺度活动液晶
Epithelia are multiscale active liquid crystals
论文作者
论文摘要
生物学过程,例如胚胎发生,伤口愈合和癌症的进展,至关重要的是上皮细胞在长度尺度上协调其机械活性的能力,而大小的尺寸大于典型的细胞大小。尽管受各种信号通路的调节,但最近显而易见的是,这种行为可以在最小的物理机理上取决于最小的工具包,其中液晶级是最突出的例子。然而,到目前为止,实验和理论研究在这方面给出了不一致的结果:尽管在实验数据的解释中经常调用列表,而计算模型则表明,六角序可以用作综合细胞层中集体迁移的六角形。在本文中,我们解决了这一困境。通过在Madin-Darby犬肾细胞(MDCK),数值模拟和分析工作上进行体外实验的组合,我们证明了nematic和六角序实际上都存在于上皮层中,前者在较大的长度尺度上占主导地位,而后者在小长度尺度上是占主导地位的。在未涂层玻璃上的MDCK GII细胞中,这些不同类型的液晶级交叉以十个细胞尺寸为单位的长度尺度。我们的工作阐明了新兴的生命组织,为破译上皮的结构提供了一个新的框架,并为组织的全面和预测性介绍性理论铺平了道路。
Biological processes such as embryogenesis, wound healing and cancer progression, crucially rely on the ability of epithelial cells to coordinate their mechanical activity over length scales order of magnitudes larger than the typical cellular size. While regulated by various signalling pathways, it has recently become evident that this behavior can additionally hinge on a minimal toolkit of physical mechanisms, of which liquid crystal order is the most prominent example. Yet, experimental and theoretical studies have given so far inconsistent results in this respect: whereas nematic order is often invoked in the interpretation of experimental data, computational models have instead suggested that hexatic order could serve as a linchpin for collective migration in confluent cell layers. In this article we resolve this dilemma. Using a combination of in vitro experiments on Madin-Darby canine kidney cells (MDCK), numerical simulations and analytical work, we demonstrate that both nematic and hexatic order are, in fact, present in epithelial layers, with the former being dominant at large length scales and the latter at small length scales. In MDCK GII cells on uncoated glass, these different types of liquid crystal order crossover at a length scale of the order of ten cell sizes. Our work sheds light on the emergent organization of living matter, provides a new framework for deciphering the structure of epithelia, and paves the way toward a comprehensive and predictive mesoscopic theory of tissues.